五相逆变器供电的五相同步磁阻电机建模与仿真

Q2 Computer Science
Namariq Ameen, A. Abdulabbas, Habeeb J. Nekad
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引用次数: 1

摘要

五相电机在电力驱动系统中的应用在许多应用中迅速扩大,因为它们与三相互补电机相比具有几个优点。由于永磁价格的波动,同步磁阻电机(SynRM)被认为是汽车工业中永磁电机的替代方案,同步磁阻电机(SynRM)被认为是感应电机的替代方案,因为它们在转子中没有励磁绕组,SynRM依靠高磁阻转矩,因此不需要在转子结构中使用磁性材料。在数学建模的基础上,对五相电压源逆变器供电的五相同步磁阻电机进行了动态仿真。采用正弦脉宽调制(SPWM)技术产生用于逆变器的脉冲。为了简化和消除电感的角依赖性,采用参考系理论对五相SynRM电压方程进行了变换。然后用已知的磁共能法获得了以相电流表示的转矩,然后得到了典型的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling and Simulation of Five-Phase Synchronous Reluctance Motor Fed By Five-Phase Inverter
Five-phase machine employment in electric drive system is expanding rapidly in many applications due to several advantages that they present when compared with their three-phase complements. Synchronous reluctance machines(SynRM) are considered as a proposed alternative to permanent magnet machine in the automotive industry because the volatilities in the permanent magnet price, and a proposed alternative for induction motor because they have no field excitation windings in the rotor, SyRM rely on high reluctance torque thus no needing for magnetic material in the structure of rotor. This paper presents dynamic simulation of five phase synchronous reluctance motor fed by five phase voltage source inverter based on mathematical modeling. Sinusoidal pulse width modulation (SPWM) technique is used to generate the pulses for inverter. The theory of reference frame has been used to transform five-phase SynRM voltage equations for simplicity and in order to eliminate the angular dependency of the inductances. The torque in terms of phase currents is then attained using the known magnetic co-energy method, then the results obtained are typical.
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来源期刊
CiteScore
5.90
自引率
0.00%
发文量
22
期刊介绍: International Journal of Electrical and Electronic Engineering & Telecommunications. IJEETC is a scholarly peer-reviewed international scientific journal published quarterly, focusing on theories, systems, methods, algorithms and applications in electrical and electronic engineering & telecommunications. It provide a high profile, leading edge forum for academic researchers, industrial professionals, engineers, consultants, managers, educators and policy makers working in the field to contribute and disseminate innovative new work on Electrical and Electronic Engineering & Telecommunications. All papers will be blind reviewed and accepted papers will be published quarterly, which is available online (open access) and in printed version.
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